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在{Mo18}大环内捕获[Mo3S4]4+簇,得到一个超分子组装体,由动态氢键网络稳定。

Capture of the [Mo3S4]4+ cluster within a {Mo18} macrocycle yielding a supramolecular assembly stabilized by a dynamic H-bond network.

机构信息

Institute Lavoisier of Versailles, University of Versailles Saint Quentin, 45 avenue des Etats Unis, 78035 Versailles Cedex, France.

出版信息

J Am Chem Soc. 2010 Feb 17;132(6):2069-77. doi: 10.1021/ja909762p.

Abstract

The use of the Mo(3)S(4)(Hnta)(3) complex (nta(3-) = nitrilotriacetate) as structuring agent toward the self-condensation process of the Mo(2)O(2)S(2)(OH(2))(6) cation leads to the largest oxothiomolybdenum ring. In the solid state, X-ray diffraction analysis reveals the presence of the targeted molecular compound (noted 1a), which consists of the {Mo(18)O(18)S(18)(OH)(18)} host templated by the Mo(3)S(4)(Hnta)(3) guest. Nevertheless, the structure shows an additional molecular moiety corresponding to a dinuclear unit {Mo(2)O(2)S(2)} coordinated to two nta(3-) ligands, mutually arranged in a cis fashion (1b). In the solid state, both entities interact through two short hydrogen bonds to give a striking supramolecular adduct, noted {1a-1b}. Synthetic procedures to prepare the individual species as pure compounds were reported. 1a was obtained as a pure mixed Cs(+)/NMe(4)(+) salt while the dinuclear unit Mo(2)O(2)S(2)(Hnta)(2) was obtained as mixed K(+)/Na(+) crystals. X-ray diffraction study of the latter reveals a trans isomer (noted 1b'), characterized by the specific coordination of both nta(3-) ligands. All the compounds were characterized in solution (D(2)O or DMSO) by multiexperiment (1)H NMR (1D, COSY, NOESY, and DOSY). The overall results were consistent with the retention of the adduct {1a-1b} which exhibits a supramolecular reactivity. The dinuclear individual species in solution gave rise to cis-trans equilibrium, while in the presence of the oxothiomolybdenum ring 1a, the dinuclear unit is maintained as a frozen cis complex. DOSY NMR provides a definitive argument for the integrity of the supramolecular assembly. In addition, preliminary electrochemical study of 1a is also reported.

摘要

使用[Mo(3)S(4)(Hnta)(3)](2-)配合物(nta(3-) = 氮三乙酸)作为结构导向剂,使得[Mo(2)O(2)S(2)(OH(2))(6)](2+)阳离子的自缩合过程得到最大的氧硫钼环。在固态中,X 射线衍射分析表明存在目标分子化合物(记为 1a),它由[Mo(3)S(4)(Hnta)(3)](2-)客体模板化的{Mo(18)O(18)S(18)(OH)(18)}主体组成。然而,结构显示出一个额外的分子部分,对应于一个双核单元{Mo(2)O(2)S(2)},与两个 nta(3-)配体配位,相互以顺式方式排列(1b)。在固态中,两个实体通过两个氢键相互作用,形成一个引人注目的超分子加合物,记为{1a-1b}。报告了制备纯化合物的单个物种的合成程序。1a 作为纯的混合 Cs(+) / NMe(4)(+)盐获得,而双核单元[Mo(2)O(2)S(2)(Hnta)(2)](2-)作为混合 K(+) / Na(+)晶体获得。后者的 X 射线衍射研究揭示了一个反式异构体(记为 1b'),其特征在于两个 nta(3-)配体的特定配位。所有化合物在溶液(D(2)O 或 DMSO)中通过多实验(1)H NMR(1D、COSY、NOESY 和 DOSY)进行了表征。所有结果均与保留的加合物{1a-1b}一致,该加合物表现出超分子反应性。在溶液中,双核单体物种导致顺反平衡,而在氧硫钼环 1a 的存在下,双核单元保持为冷冻顺式配合物。DOSY NMR 为超分子组装的完整性提供了明确的论据。此外,还报道了 1a 的初步电化学研究。

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